Inverted variable resistance memory cell and method of making the same
An inverted variable resistance memory cell and a method of fabricating the same. The memory cell is fabricated by forming an opening in an insulating layer deposited over a semiconductor substrate, etching the top portion of the opening to have a substantially hemispherical-shape, forming a metal layer in the opening, and overlying a variable resistance material over the metal layer.
1. A method of fabricating a phase change memory cell, comprising the steps of:
forming a via in a first insulating material;
etching a top portion of the via to form a substantially hemispherical-shaped portion;
forming a first conductive material in the via, the first conductive material having substantially uniform thickness along sidewalls of the top portion, substantially filling a bottom portion of the via; and
forming a phase change material in contact with the first conductive material and within the hemispherical-shaped portion of the via.
2. The method of claim 1 , further comprising:
providing a second insulating material formed over the first insulating material, the first conductive material, and the phase change material;
forming a via in the second insulating material; and
forming a second conductive material over the second insulating material.
3. The method of claim 2 , wherein the step of forming a via in the second insulating material further comprises:
patterning a masking material with an opening over the second insulating material; and
etching to remove unmasked portions of the second insulating material to form the via.
4. The method of claim 2 , wherein the first and second insulating materials are formed by deposition methods including sputtering, chemical vapor deposition, plasma enhanced chemical vapor deposition, and physical vapor deposition.
5. The method of claim 1 , wherein the step of forming a via on the first insulating material further comprises:
patterning a masking material with an opening over the first insulating material; and
etching to remove unmasked portions of the first insulating material to form the via.
6. The method of claim 1 , further comprising planarizing the first conductive material prior to formation of the phase change material using chemical mechanical planarization.
7. The method of claim 1 , further comprising planarizing the phase change material subsequent to planarizing the first conductive material.
8. A method of fabricating a phase change memory cell, comprising the steps of:
forming a first insulating material;
patterning a masking material with an opening over the first insulating material;
etching to remove unmasked portions of the first insulating material to form a first via in the first insulating material;
etching a top portion of the first via to form a substantially hemispherical-shaped portion;
forming a first conductive material in the first via, the first conductive material having substantially uniform thickness along sidewalls of the top portion, substantially filling a bottom portion of the first via and not completely filling the hemispherical-shaped portion of the via;
planarizing a top surface of the first conductive material to be co-planar with a top surface of the first insulating material;
forming a phase change material over the first conductive material and within the hemispherical-shaped portion of the via;
planarizing the phase change material to the top surface of the first insulating material;
forming a second insulating material over the first insulating material, the first conductive material, and the phase change material;
patterning a masking material with an opening over the second insulating material;
etching to remove unmasked portions of the second insulating material to form a second via; and
forming a second conductive material over the second insulating material, the second conductive material substantially filling the second via.